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Quayside Mooring System Design of Prelude FLNG for Extreme Environmental Condition

극한환경조건에 대한 프릴루드 FLNG 안벽계류시스템 설계

  • Received : 2017.09.13
  • Accepted : 2018.01.05
  • Published : 2018.02.28

Abstract

The design and analysis of a quayside mooring system for safe mooring of Prelude FLNG under extreme environmental conditions were carried out. The design of the mooring system considered the yard operation conditions and maximum wind speed during a typhoon. In order to secure the mooring safety of Prelude FLNG under an extreme environment, a special steel structure was designed between the quay and Prelude FLNG to maintain the distance from the quay to a certain extent to avoid a collision with the inclined base. The mooring safety was also ensured by installing additional new parts on the quay. A mooring analysis and mooring safety review were performed with more rigorous modeling considering the nonlinearity of the mooring rope and fender. In order to secure additional safety of the mooring system under extreme environmental conditions, a safety assessment was conducted on the failures of the mooring components proposed in the marine mooring guidelines. Based on the results of the mooring analysis, it was confirmed that the Prelude FLNG can be safely moored even under the extreme conditions of typhoons, and a worst case scenario analysis verified that the mooring system design was robust enough. The proposed mooring analysis and design method will provide a basis for the safe mooring of ultra-large floating offshore structures of similar size in the future.

Keywords

References

  1. Bently Systems,2015.Reference Manual for MOSES,Bently Systems.
  2. GL Noble Denton, 2013. Technical Policy Board Guidelines for Moorings, GL noble denton 0032/ND. GL Noble Denton.
  3. Korea Offshore and Shipbuilding Association(KOSHIPA), 2011. Analysis of Competitiveness of Offshore Plant Industry and Development of Short-and Long-term Strategy. [Online] Availible at: [Accessed January 2017].
  4. Korea Evaluation Instutute of Industrial Technology(KEIT), 2015. The Status and Prospectof Floating OffshorePower Plant Technology. [Online] Availible at: [Accessed January 2017].
  5. Korea Energy Economics Instutute(KEEI), 2015. Tasks and Countermeasures of the Domestic Resource Development Offshore Plant Industry. [Online] Availible at: [Accessed February 2017].
  6. KPMG Global Energy Instutute(KPMG GEI), 2014. Floating LNG: Revolution and Evolution for The Global Industry. [Online] Availible at: [Accessed February 2017].
  7. LNG Plant Project Business Group, 2010. LNG-FPSO PlanningStudy of LNG Plant Project Business Group. [Online] Availible at: [Accessed February 2017].
  8. Na, J.H., Sim, W.S., Lee, I.H., Moon, J.S., Kim, J.W., Shin, H.S., 2004. FPSO Quay Mooring Analysis in Typhoon Condition. Proceedings of the Annual Autumn Meeting, Sancheong Korea.
  9. Park, M.K., Cho, J.W., Chung, J.H., 2011. Quay Mooring Analysis for a Drillship in Typhoon Conditions. Journal of the Society of Naval Architects of Korea, Special Issue, 70-74.
  10. Shell Development (Australia) Proprietary Limited, 2009. Prelude Floating LNG Project Environmental Impact Statement. [Online] Availible at: [Accessed September 2016].
  11. Yang, S.H., Cho, J.W., Kim, H.J., Kim, B.K., 2015. Study on the Mooring Stability of Floating Dock with Ultra Large Offshore Structure. Journal of the Society of Naval Architects of Korea, 52(6), 509-519. https://doi.org/10.3744/SNAK.2015.52.6.509